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Biomechanical effects of rockers on walking in a plaster cast.

Rockers are applied to lower limb casts to assist walking but there is little information on their biomechanical effects. The performances of 10 commercially available rockers were compared. They were applied to a below-knee cast worn by a normal subject who was also tested walking in the cast alone. Gait analysis was used to evaluate kinematic and kinetic data. The design of rocker had no effect upon the kinematics of walking. However, using new criteria for kinetic assessment of rocker function (tibial floor angular velocity and centre of pressure progression), most designs had a deleterious effect on the biomechanics of gait. Only two rockers approached the ideal kinetic criteria.

Biomechanical Phenomena↗

Above and below-the-elbow plaster casts for distal forearm fractures in children. A randomized controlled trial.

BACKGROUND: Closed fractures of the distal third of the forearm are the most common fractures of childhood, but the method of immobilization after closed reduction is controversial. This study was undertaken to determine whether below-the-elbow casts are as effective as above-the-elbow casts in immobilizing these types of fractures and to identify patient and treatment considerations that are related to loss of reduction. METHODS: We designed a blinded, randomized, controlled trial. The criteria for reduction and remanipulation were set a priori. The primary outcome measure was fracture immobilization as reflected by reangulation in the cast and by the need for remanipulation. Exploratory analysis with use of stepwise logistic regression analysis was undertaken to search for factors predictive of loss of reduction. RESULTS: A total of 102 children were enrolled in the study and were allocated to two groups: the above-the-elbow cast group (fifty-six children) and the below-the-elbow cast group (forty-six children). The mean age was 8.6 years, and sixty-one patients were boys. The groups did not differ with respect to the initial fracture angulation, postreduction angulation, reangulation during cast immobilization, and angulation of the fracture at the time of cast removal. In the above-the-elbow cast group, twenty-three (42%) of fifty-five children with adequate radiographs met the criteria for remanipulation compared with fourteen (31%) of forty-five children with adequate radiographs in the below-the-elbow cast group (p = 0.27); only four of these thirty-seven children actually underwent remanipulation. Children with fractures of both the radius and ulna (p = 0.01) and those with residual angulation after reduction (p = 0.0001) were at the highest risk of meeting the criteria for remanipulation. The rates of complications related to the cast did not differ between the groups. CONCLUSIONS: Below-the-elbow casts perform as well as above-the-elbow casts in maintaining reduction of fractures in the distal third of the forearm in children, and the complication rates are similar. Factors that are associated with a higher risk of loss of reduction include combined radial and ulnar fractures and residual angulation of the fracture after the initial reduction.

Casts, Surgical↗

The effect of hydration water temperature on orthopedic plaster cast strength.

The effect of hydration water temperature (dip water) on the strength of orthopedic casts is discussed. Three methods of testing are used in an attempt to detect any differences and also to assess their clinical relevance. It was found that warmer water produced stronger casts, however, the differences were not found to be clinically relevant. It is suggested that water temperature be chosen on the basis of considerations other than strength.

Casts, Surgical↗

Plaster casts.

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Calcium Sulfate↗

Changes in composition and metabolic activity of the skeletal parts of the extremity of the adult rat following immobilisation in a plaster cast.

Immobilisation of the one hind leg in adult male rats was followed by characteristic changes of the bone mass and the percentage composition of the tibia and the femur of the immobilised leg. These changes were studied during an immobilisation period of 1 to 24 weeks. The tibia of the immobilised leg showed significant loss of bone mass expressed as a decrease of its organic and ash weights as compared with the tibia of the non-immobilised leg. There was a significant increase of its percentage water content and significant decrease of its organic and its ash contents. The specific activity of the tibia was increased throughout but the increase was independent of time. The observed changes in bone mass and in percentage composition of the femur of the immobilised leg were almost identical with those of the immobilised tibia. The specific activity of the femur showed a positive almost linear regression. There were observations indicating that the skeletal changes recorded for the tibia were progressive during the period of observation. The changes noted in the femur seemed to be stabilised or even somewhat declining towards the end of the experiment.

Animals↗